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Group-Query-as-a-Service for Secure Low-Latency Opportunistic RF Spectrum Access in Mobile Edge Computing Enabled Wireless Networks

机译:组查询即服务,用于启用移动边缘计算的无线网络中的安全低延迟机会性RF频谱访问

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For enhancing the utilization of radio frequency (RF) bands, dynamic spectrum access has been considered to be an emerging paradigm where unlicensed secondary users access the licensed RF spectrum opportunistically without causing harmful interference to licensed primary users. In order to access idle channels, secondary users are required either to sense channels or search the geolocation based spectrum database before starting their actual communications. Note that the database searching approach has been proven to be more effective than the channel sensing approach since the sensing based approach results in higher sensing uncertainties. When a large number of secondary users query the spectrum database for finding idle channels at the same time, the spectrum server could be overwhelmed that could result in (unintentional) Denial-of-Service attack. In this paper, we investigate group-query-as- aservice for searching idle channels in database driven dynamic spectrum access where selected secondary users (aka grid leaders who are selected based on the interactive trust levels, location and resources in their grids) query on behalf of the other secondary users (aka grid followers). In this approach, secondary users are associated with the contours created based on same idle channels with the help of spectrum sensors and mobile edge computing (MEC) servers at each base station. The performance of the proposed group-query-as-a-service is evaluated using numerical results obtained from Monte Carlo simulation. We found that the proposed approach results in less delay with increase edge hit rate and higher throughput than the individual query based approach.
机译:为了增强射频(RF)频段的利用率,动态频谱访问已被视为新兴的范式,在这种范式中,未许可的次要用户可以机会性地访问许可的RF频谱,而不会对许可的主要用户造成有害干扰。为了访问空闲信道,需要辅助用户在开始其实际通信之前感知信道或搜索基于地理位置的频谱数据库。注意,由于基于感测的方法导致更高的感测不确定性,因此数据库搜索方法已被证明比信道感测方法更有效。当大量辅助用户同时查询频谱数据库以查找空闲信道时,频谱服务器可能会不知所措,从而导致(无意间)拒绝服务攻击。在本文中,我们研究了组查询即服务,用于在数据库驱动的动态频谱访问中搜索空闲信道,其中选择的二级用户(又名网格领导者是根据其网格中的交互信任级别,位置和资源来选择的)代表其他二级用户(又称网格关注者)。在这种方法中,借助每个基站的频谱传感器和移动边缘计算(MEC)服务器,辅助用户与基于相同空闲信道创建的轮廓相关联。建议的组查询即服务的性能是使用从蒙特卡洛模拟获得的数值结果进行评估的。我们发现,与基于单个查询的方法相比,所提出的方法可减少延迟,并增加边缘命中率并提高吞吐量。

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